Nonminimal particle-like solutions in cubic scalar field theory
arXiv:hep-th/9911012 · doi:10.1016/S0370-2693(99)00166-5
Abstract
The cubic scalar field theory admits the bell-shaped solitary wave solutions which can be interpreted as massive Bose particles. We rule out the nonminimal p-brane action for such a solution as the point particle with curvature. When quantizing it as the theory with higher derivatives, it is shown that the corresponding quantum equation has SU(2) dynamical symmetry group realizing the exact spin-coordinate correspondence. Finally, we calculate the quantum corrections to the mass of the bell boson which can not be obtained by means of the perturbation theory starting from the vacuum sector.
final version
Cited by in corpus (6)
- Noncommutativity Effects in FRW Scalar Field Cosmology
- Noncommutative Double Scalar Fields in FRW Cosmology as Cosmical Oscillators
- Field-to-particle transition based on the zero-brane approach to quantization of multiscalar field theories and its application for Jackiw-Teitelboim gravity
- Holographic principle and field-to-particle transition formalism in sigma model, dilaton gravity and supergravity: Point particle as end product of field theory and seed of string-brane approach
- Zero-brane approach to study of particle-like solitons in classical and quantum Liouville field theory
- Zero-brane approach to quantization of biscalar field theory about topological kink-bell solution